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Magnetically aggregated biosensors for sensitive detection of biomarkers at low concentrations

机译:磁性聚集生物传感器,用于低浓度生物标志物的灵敏检测

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摘要

Detection of biomarkers at low concentrations is essential for early diagnosis of numerous diseases. In many sensitive assays, the target molecules are tagged using fluorescently labeled probes and captured using magnetic beads. Magnetic beads facilitate washing and separation steps, are well suited for automation, and improve the assay sensitivity. Current devices rely on quantifying the target molecules by detecting the fluorescence signal from individual beads. Thus, to detect low concentrations of target molecules, these devices require sophisticated optical detectors, making them bulky and expensive. Here, we propose a compact fluorescence-based system that simply uses a small permanent magnet with a conic tip to aggregate the magnetic beads, forming a cluster of fluorescently labeled probes whose fluorescence signal is much greater than that of a single bead. Using the magnetically aggregated biosensors to detect human Interleukin-8, we demonstrated a limit of detection of 0.1ng/l and a 4-log dynamic range performance, which is on par with the most sensitive devices but is achieved without their bulk and cost.
机译:低浓度生物标志物的检测对于多种疾病的早期诊断至关重要。在许多敏感的测定中,使用荧光标记的探针标记目标分子,并使用磁珠捕获目标分子。磁珠便于清洗和分离步骤,非常适合自动化操作,并提高了测定灵敏度。当前的设备依靠通过检测来自单个珠子的荧光信号来量化靶分子。因此,为了检测低浓度的目标分子,这些设备需要复杂的光学检测器,使其体积庞大且昂贵。在这里,我们提出了一个紧凑的基于荧光的系统,该系统仅使用带有圆锥形尖端的小型永磁体来聚集磁珠,从而形成一簇荧光标记的探针,其荧光信号远大于单个磁珠。使用磁性聚集的生物传感器检测人白细胞介素8,我们证明了0.1ng / l的检测极限和4对数的动态范围性能,这与最灵敏的设备相当,但无需体积和成本即可实现。

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